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Current sourced bi-directional inductive power transfer system

机译:电流源双向感应电力传输系统

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摘要

Modern electronic systems and appliances are preferably powered through wireless techniques. Inductive power transfer (IPT) is an efficient technique that is suitable for supplying contactless or wireless power to numerous applications. IPT systems with the capability of bi-directional power flow are attractive for applications, such as vehicle-to-grid systems and moving equipment that require contactless charging and discharging, and regenerative energy recovery. This study presents a new bi-directional IPT technique that suppling power from one system to another, across an air-gap and through weak magnetic coupling in both directions. The proposed system employs a parallel resonant circuit together with a controlled rectifier on each side of the air-gap to facilitate bi-directional and contactless power flow. A mathematical model is presented to show that both amount and direction of the power flow can be controlled through either relative phase angle or magnitude control of the voltages generated by controlled rectifiers. The viability of the proposed bi-directional IPT concept is demonstrated with experimental evidence of a 500 W prototype bi-directional IPT system. Both experimental and simulations results are in good agreement, and indicate that the proposed IPT system is feasible and attractive for applications, where bi-directional power flow is advantageous.
机译:现代电子系统和设备优选地通过无线技术来供电。感应功率传输(IPT)是一种有效的技术,适用于向众多应用程序提供非接触式或无线电源。具有双向功率流能力的IPT系统对于要求非接触式充电和放电以及再生能量回收的车辆到电网系统和移动设备等应用很有吸引力。这项研究提出了一种新的双向IPT技术,该技术通过一个气隙并通过双向弱磁耦合将功率从一个系统提供到另一个系统。提出的系统在气隙的每一侧采用并联谐振电路以及受控整流器,以促进双向和非接触式功率流。提出了一个数学模型,以表明可以通过相对相位角或受控整流器产生的电压的幅度控制来控制潮流的量和方向。 500 W原型双向IPT系统的实验证据证明了所提出的双向IPT概念的可行性。实验和仿真结果均吻合良好,表明所提出的IPT系统是可行的,并且对双向功率流较为有利的应用具有吸引力。

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